Field of the invention
[0001] The present invention relates to the field of equipments and components for the installation
of optical cables in optical (access) networks. In particular, the present invention
relates to a port sealing device and assembly for an optical cable termination box.
Background of the invention
[0002] A FTTH ("Fiber To The Home") network is an optical access network providing a number
of end users with broadband communication services, i.e. with services requiring data
transmission at a very high rate, for example of some Mbit/s.
[0003] Typically, a FTTH network comprises a distribution box or cabinet which cooperates
with an access network and which is typically located in the basement of the building
where the end users reside. An optical trunk cable, hereinafter referred to as "riser
cable", exits the distribution box and runs through the building from the basement
up to all the building floors.
[0004] At each floor of the building, the riser cable may be optically connected to one
or more optical cables, hereinafter referred to as "drop cables". Each drop cable
typically terminates at its far end into a respective customer optical termination
box located within or in proximity of the apartment or office of an end user.
[0005] During installation of the optical termination box, the operator has to lay down
the drop cable from a distribution cabinet to the apartment of the end user where
the operator has to cut the drop cable and connect the optical fibres to optical connectors
by means of optical fibre splices.
[0006] The termination boxes are provided with a plurality of ports located in the peripheral
wall of the box which are used for causing the fibre cable to enter the box.
[0007] When not in use, the ports must be closed by a respective removable device, usually
a grommet, in order to guarantee the tightness of the inner space of the termination
box and the formation of a passage for the insertion of the cable when this latter
has to be installed.
[0008] EP 1434327 discloses a standard one piece rubber grommet for axial cable insertion where the
cable can be caused to pass trough it after a portion of the grommet has been removed
and a hole has been formed. The hole is formed by making use of a scissor or other
suitable cutting tool.
[0009] US 2005084226 discloses a two pieces grommet comprising a ring and a closure cap which operates
as a sealing member. When the cable has to be passed through the grommet, it is necessary
to remove the closure cap before.
[0010] US 2009058018 discloses a two pieces grommet which allows the cable to be positioned inside the
box without the need of being axially inserted through a hole. The sealing device
comprises a compression mechanism with a first and a second gel grommets mounted on
first and second housing parts, respectively. The first and second gel grommets are
so shaped to circumferentially wrap the cable in order to limit its axial displacement.
US 20130328271 discloses a port sealing device comprising two bodies, defining a passage there between
when the bodies are placed one on the other, and multiple independent blind plugs,
sealing said passage. Flexible and frangible bridges are connecting the independent
blind plugs to either one of the bodies.
Summary of the invention
[0011] The Applicant has perceived that the solution proposed in
EP 1434327 needs a cutting tool for forming the hole and that the optical cable can enter the
termination box only by passing axially through the hole.
[0012] The Applicant has also perceived that according to the solution disclosed in
US 2005084226, for the installation of the cable, the cap has to be removed and that the cable
has to be inserted axially through the hole. Moreover, this solution is suitable for
fixed diameters.
[0013] The Applicant has also perceived that the solution disclosed in
US 2009058018 needs a large number of different pieces for realizing the grommet and it is therefore
extremely complex.
[0014] In view of the above, the Applicant has tackled the problem of providing a port sealing
device for optical cable termination boxes which guarantees a high sealing effect
when the cable is not present through the port without the need of a cutting tool
for the preparation of the passage for the cable when this latter is to be connected
inside the box.
[0015] The Applicant has therefore found that it is convenient to have a port sealing device
allowing a transversal cable insertion without any need to access to the cable end
which can be already connected to its terminal.
[0016] Therefore, the present invention relates to a port sealing device for housing an
optical cable when passing through a peripheral wall of a termination box comprising
two bodies defining a passage therebetween when the bodies are placed one on the other,
a removable plug sealing said passage and flexible and frangible bridges connecting
the plug to the two bodies.
[0017] In particular, the port sealing device is movable between an open configuration,
wherein the two bodies are arranged in line and separated by the plug, and a closed
configuration, wherein the two bodies are facing each other defining a substantially
cylindrical passage with the plug inserted therein to close such cylindrical passage.
[0018] Advantageously, the bridges connecting the plug to the first and second bodies, extend
from the plug to the respective body along opposite directions. In this way, the two
bodies may pivot about the plug by bending the bridges causing the plug to remain
in between.
[0019] Preferably, the first and second bodies are box shaped, each body being provided
on a face thereof with an outwardly open channel axially extending through the entire
thickness of each body forming said passage when the first and the second bodies rest
one on the other with the respective open channels faced one another.
[0020] According to the invention, the cross section of the passage has a size configured
to receive an optical cable.
[0021] Preferably the outwardly open channels have an inner surface which is shaped with
a plurality of flexible indentations and the indentations are axially distributed
on the inner surface of the channel.
[0022] According to the invention, the flexible and frangible bridges connecting said plug
to said first and second bodies, are configured to allow an angular movement of the
plug with respect to each one of the bodies of at least 90°.
[0023] Preferably, the flexible and frangible bridges comprise at least one stress raiser.
[0024] The present invention also relates to an optical termination box according to any
of the claims 8 to 12.
Brief description of the drawings
[0025] The present invention will now be described in more detail hereinafter with reference
to the accompanying drawings, in which some embodiments of the invention are shown.
FIG. 1 is a schematic perspective view of a termination box in open position showing
sealing port devices in their location in the peripheral wall of the box, one of which
is partially disassembled,
FIG. 2 is a schematic perspective view, showing in an enlarged scale a portion of
FIG. 1,
FIG. 3 is a schematic front view of a row of sealing ports in a portion of the peripheral
wall of a termination box,
FIG. 4 is a schematic perspective view of a first embodiment of a port sealing device
according to the invention taken from one side thereof,
FIG. 5 is a schematic perspective view of the port sealing device of FIG 4, taken
from the reverse side,
FIG. 6 is a schematic perspective view of a second embodiment of a port sealing device
according to the invention taken from one side thereof,
FIG. 7 is a schematic perspective view of the port sealing device of FIG 6, taken
from the reverse side,
FIG. 8 is a schematic perspective view of a third embodiment of a port sealing device
according to the invention.
Detailed description
[0026] For the purposes of the present description and claims an optical cable is deemed
to be any optical cable comprising one or more optical fibre units, an outer sheath
and, optionally, flexible strength members.
[0027] A fibre unit is defined as an assembly comprising one (or more) optical fibre(s)
which is constituted by a glass core, a glass cladding, a single or dual coating layer
and an outer layer surrounding the said one (or more) optical fibre(s) in order to
protect the overall optical fibre(s) from damage.
[0028] With reference to figures 1, 2 and 3, termination box is indicated as a whole by
numeral 1. The box 1 comprises a bottom 2, a peripheral wall 3 and a lid 4 which is
connected to the peripheral wall 3 by a plurality of hinges 5.
[0029] In the peripheral wall 3 a plurality of ports 6, preferably in form of openings,
are provided each for giving access to the inside of the termination box 1.
[0030] Each of the openings 6 comprises a respective seat 7 for housing a respective port
sealing device depicted as a whole with numeral reference 8.
[0031] An optical cable 9 is shown passing through one of the openings 6 by means of the
port sealing device 8.
[0032] With reference to figures 4 and 5, a first embodiment of the port sealing device
8 is shown.
[0033] The port sealing device 8 comprises a first body 10 and a second body 11 defining
a passage there between when the bodies 10,11 are placed one on the other.
[0034] The first body 10 and the second body 11 have each a thickness T between 9 mm and
15 mm, preferably about 12 mm, and a height H between 7 mm and 12 mm, preferably about
9 mm.
[0035] The first and second bodies 10,11 are shaped as parallelepiped, each body being provided
on a face thereof with an outwardly open channel 12,13 axially extending through the
entire thickness of each body.
[0036] The first and second bodies 10,11, when positioned in the seat 7 of an opening 6,
rest one on the other with the respective open channels 12,13 faced one another forming
a passage 14 the cross section of which is having a size configured to receive and
firmly house an optical cable 9.
[0037] A removable plug 15, for sealing the passage 14, is connected to the first and second
bodies 10,11 by means of flexible and frangible bridges 16,17 which extend from the
plug 15 to the respective body 10,11 along opposite directions.
[0038] The flexible and frangible bridges 16,17, connecting the plug 15 to the first and
second bodies 10,11, are configured to allow an angular movement of the plug 15 with
respect to each one of the bodies 10,11, of at least 90°, preferably along the circular
direction R shown in the example of figure 2.
[0039] In order to facilitate the removal of the plug 15 from the bodies 10,11, when the
sealed port has to be opened for housing the optical cable 9, the flexible and frangible
bridges 16,17 may comprise at least one stress raiser 18.
[0040] According to a preferred embodiment shown in the example of figure 5, the outwardly
open channels 12,13 have an inner surface shaped with a plurality of flexible indentations
19 which, preferably, are axially distributed over the entire length of the channels
12, 13.
[0041] The first and second bodies 10,11 comprise slots 20,21 on both sides 22,23 and 24,25.
Preferably, each slot 20,21 extends parallel to the axial extension of the respective
outwardly open channel 12,13 and partially along the height H of the bodies 10,11.
[0042] The slots 20 of the first body 10 are aligned with the slots 21 of the second body
11 when the bodies are placed one on the other in the seat 7 of the opening 6.
[0043] With reference to the example shown in figure 2, the peripheral wall 3 of the termination
box 1 has a thickness T for housing the first and second bodies 10,11 when the bodies
10,11 are placed one on the other in the seat 7 of the opening 6.
[0044] In order to guide the port sealing device 8 when inserted in the peripheral wall
3 of the termination box 1, the seat 7 comprises opposed ribs 2627, mating the slots
20,21 of the bodies 10,11.
[0045] Advantageously, as shown in the example of figure 4, for securing the port sealing
device 8 in the peripheral wall 3 of the box 1, the bodies 10,11 comprise at least
one slot 28,29 on the sides 30,31 opposed to the respective outwardly open channel
12,13 and designed to cooperate with the the lid 4 of the termination box 1. The lid
4 comprises projection elements 32, as shown for example in figure 1, mating said
slot 28 or 29, depending on which body 10 or 11 is mounted in the opening 6 facing
the lid 4, when the lid 4 rests on the peripheral wall 3 of the termination box 1.
[0046] With reference to figures 6 and 7, it is shown a second embodiment of the port sealing
device according to the invention. The features of this second embodiment of the port
sealing device correspond to the equivalent features of the first embodiment of figures
4 and 5 indicated by the same numeral references increased by 100.
[0047] It should be noted that the cross section of the plug 115 is greater than that of
plug 15 of the first embodiment in order to seal a passage formed by channels 112
and 113 having a cross section suitable to house an optical cable having a cross section
greater than that of cable 9.
[0048] Moreover it should be noted that the inner surface of channels 112 and 113 has no
indentations.
[0049] With reference to figure 8 showing a third embodiment of the port sealing device
according to the invention, the features which correspond to the equivalent features
of the first embodiment of figures 4 and 5 are indicated by the same numeral references
increased by 200.
[0050] While the second body 211 is shaped as parallelepiped, the outer surface of the first
body 210 is curved.
[0051] Use of the assembly it will be described here below.
[0052] When a port sealing device 8 is mounted inside an opening 6 formed in the peripheral
wall 3 of a termination box 1, with the bodies 10 an 11 placed one over the other,
the plug 15 is kept between the two bodies and provides a tight seal to the port of
the box 1.
[0053] The lid 4 of the box 1 cooperates with the sealing device 8 to keep the sealing devices
8 in its position in the opening 6 due to the engagement of the projection element
32 inside the slot 28 or 29, depending on which body 10 or 11 is mounted in the opening
6 facing the lid 4.
[0054] In case of use of a port of the termination box, after having raised the lid 4, the
bodies 10 and 11 of the sealing device of the selected port are detached from the
plug 15 without the need of any tool because the flexible and frangible bridges 16
and 17 can be easily broken manually by the operator due to the presence of a stress
raiser 18 in at least one of the bridges.
[0055] One of the bodies 10 and 11 remains located in the seat 7 of the opening 6 by engagement
of the ribs 26, 27 with the slots 20 or 21 and the cable 9 already connected to its
terminal is transversely placed in the open channel 12 or 13. The other body 11 or
10 is placed over the body already present in the seat 7 retaining the cable 9 lying
inside the passage formed by the opposed open channels 12 and 13.
[0056] By tilting the lid 4 around the hinges 5, the box 1 is closed and the sealing of
all the ports in use and not in use is provided because all of the port sealing devices
8 result to be pressed by the lid 4 and particularly by its projecting elements 32
engaging the slots 28 or 29 depending on which body is facing the lid 4.
[0057] The material used for manufacturing the port sealing device 8 may be rubber or any
other elastically deformable material, natural or synthetic.
1. A port sealing device (8) for housing an optical cable (9) when passing through a
peripheral wall (3) of a termination box (1), comprising:
- a first body (10, 110) and a second body (11, 111) each having a thickness (T) and
a height (H) defining a passage (14, 114) therebetween when the bodies are placed
one on the other,
- a removable plug (15, 115) sealing said passage (14, 114),
- flexible and frangible bridges (16, 17, 116, 117) connecting said plug (15, 115)
to said first and second bodies,
characterized in that said flexible and frangible bridges (16, 17, 116, 117) are configured to allow an
angular movement of the plug with respect to each one of the bodies of at least 90°.
2. The port sealing device (8) according to claim 1, wherein said bridges (16, 17, 116,
117) extend from the plug to the respective body along opposite directions.
3. The port sealing device (8) according to claim 1 or 2, wherein each body is provided
on a face thereof with an outwardly open channel (12, 13, 112, 113) axially extending
through the entire thickness (T) of the body.
4. The port sealing device (8) according to claim 3, wherein said first and second bodies,
when resting one on the other with the respective open channels facing one another,
form said passage (14, 114).
5. The port sealing device (8) according to any one of claims 3 and 4, wherein said outwardly
open channels (12, 13) have an inner surface which is shaped with a plurality of flexible
indentations (19).
6. The port sealing device (8) according to any one of claims 3 to 5, wherein the cross
section of the passage (14, 114), when formed by said outwardly open channels (12,
13, 112, 113), has a size configured to receive an optical cable (9).
7. The port sealing device (8) according to any one of the claims 1 to 6, wherein said
flexible and frangible bridges (16, 17, 116, 117) comprise at least one stress raiser
(18).
8. An optical cable termination box (1) having a bottom (2), a lid (4) and a peripheral
wall (3), the optical cable termination box (1) comprising:
- a port sealing device (8) according to any one of the claims 1 to 7,
- at least one opening (6) formed in at least a portion of said peripheral wall (3)
of the termination box (1), and
- a seat (7) formed in said at least one opening (6) for housing said first body (10,
110) and said second body (11, 111) when said first body (10, 110) and said second
body (11, 111) are placed one on the other inside said at least one opening (6).
9. The optical cable termination box (1) according to claim 8 when dependent on claim
5, wherein said indentations (19) are axially distributed on the inner surface of
each channel (12, 13).
10. The optical cable termination box (1) according to claim 8 when dependent on claim
3, wherein said first and second bodies (10, 11, 110, 111) comprise at least one first
slot (20, 21, 120, 121) on both sides which extend parallel to the axial extension
of the respective outwardly open channel (12, 13, 112, 113), said at least one first
slot (20, 21, 120, 121) extending along the height (H) of the bodies, and wherein
the peripheral wall (3) of the termination box (1) has a thickness (T) for housing
said first and said second bodies (10, 11, 110, 111) when said bodies are placed one
on the other in said seat (7), said seat (7) comprising ribs (26, 27) mating said
first slots (20, 21, 120, 121) of said bodies.
11. The optical cable termination box (1) according to claim 10, wherein the first slots
(20, 120) of the first body (10, 110) are aligned with the first slots (21, 121) of
the second body (11, 111) when the bodies are placed one on the other in said seat
(7).
12. The optical cable termination box (1) according to claim 8 when dependent on claim
3, wherein said first and second bodies (10, 11, 110, 111) comprise at least one second
slot (28, 29, 128, 129) on the side opposed to the respective outwardly open channel
(12, 13, 112, 113), and wherein said lid (4) of the termination box (1) comprises
projection elements (32) mating said second slot (28, 29, 128, 129) when the lid (4)
rests on the peripheral wall (3) of the termination box (1).
1. Eine Dichtungstülle (8) zur Unterbringung eines optischen Kabels (9), wenn dieses
durch eine umlaufende Wandung (3) einer Verbindungsdose (1) geführt wird, umfassend:
- einen ersten Körper (10, 110) und einen zweiten Körper (11, 111), die jeweils eine
Dicke (T) und eine Höhe (H) aufweisen, wobei sich zwischen den Körpern ein Durchgang
(14, 114) befindet, wenn die Körper aufeinander platziert sind,
- einen entfernbaren Stopfen (15, 115), der den Durchgang (14, 114) verschließt,
- flexible und zerbrechliche Brücken (16, 17, 116, 117), die den Stecker (15, 115)
mit dem ersten und zweiten Körper verbinden, dadurch gekennzeichnet, dass die flexiblen und zerbrechlichen Brücken (16, 17, 116, 117) so konfiguriert sind,
dass eine Winkelbewegung des Steckers in Bezug auf jeden der Körper von mindestens
90° möglich ist.
2. Dichtungstülle (8) nach Anspruch 1, wobei sich die Brücken (16, 17, 116, 117) vom
Stopfen zum jeweiligen Körper in entgegengesetzten Richtungen erstrecken.
3. Dichtungstülle (8) nach Anspruch 1 oder 2, wobei jeder Körper auf einer seiner Flächen
einen nach außen offenen Kanal (12, 13, 112, 113) aufweist, der sich axial durch die
gesamte Dicke (T) des Körpers erstreckt.
4. Dichtungstülle (8) nach Anspruch 3, wobei die ersten und zweiten Körper, wenn sie
mit den jeweiligen offenen Kanälen aufeinander ruhen und einander zugewandt sind,
den Durchgang bilden (14, 114).
5. Dichtungstülle (8) zum Abdichten von Öffnungen nach einem der Ansprüche 3 und 4, wobei
die nach außen offenen Kanäle (12, 13) eine Innenfläche aufweisen, die mit einer Vielzahl
von flexiblen Einbuchtungen (19) geformt ist.
6. Dichtungstülle (8) nach einem der Ansprüche 3 bis 5, wobei der Querschnitt des Durchgangs
(14, 114), wenn er von den nach außen offenen Kanälen (12, 13, 112, 113) gebildet
wird, eine Größe hat, die zur Aufnahme eines optischen Kabels (9) ausgebildet ist.
7. Dichtungstülle (8) nach einem der Ansprüche 1 bis 6, wobei die flexiblen und zerbrechlichen
Brücken (16, 17, 116, 117) mindestens einen Spannungserhöher (18) umfassen.
8. Eine optische Verbindungsdose (1) für ein optisches Kabel mit einem Boden (2), einem
Deckel (4) und einer umlaufenden Wandung (3), wobei die Verbindungsdose (1) für ein
optisches Kabel umfasst:
- eine Dichtungstülle (8) nach einem der Ansprüche 1 bis 7,
- mindestens eine Öffnung (6), die in mindestens einem Teil der umlaufenden Wandung
(3) des Anschlusskastens (1) ausgebildet ist, und
- einen Sitz (7), der in der mindestens einen Öffnung (6) ausgebildet ist, um den
ersten Körper (10, 110) und den zweiten Körper (11, 111) aufzunehmen, wenn der erste
Körper (10, 110) und der zweite Körper (11, 111) innerhalb der mindestens einen Öffnung
(6) übereinander angeordnet sind.
9. Optische Verbindungsdose (1) für ein optisches Kabel nach Anspruch 8, wenn abhängig
von Anspruch 5, wobei die Einkerbungen (19) axial auf der Innenfläche jedes Kanals
(12, 13) verteilt sind.
10. Optische Verbindungsdose (1) für ein optisches Kabel nach Anspruch 8, wenn abhängig
von Anspruch 3, wobei der erste und der zweite Körper (10, 11, 110, 111) mindestens
einen ersten Schlitz (20, 21, 120, 121) an beiden Seiten aufweisen, der sich parallel
zur axialen Ausdehnung des jeweiligen nach außen offenen Kanals (12, 13, 112, 113)
erstreckt, und wobei sich der mindestens eine erste Schlitz (20, 21, 120, 121) entlang
der Höhe (H) der Körper erstreckt, und wobei die umlaufende Wandung (3) des Abschlusskastens
(1) eine Dicke (T) zur Aufnahme des ersten und des zweiten Körpers (10, 11, 110, 111)
aufweist, wenn die Körper in dem Sitz (7) übereinander angeordnet sind, und wobei
der Sitz (7) Rippen (26, 27) aufweist, die mit den ersten Schlitzen (20, 21, 120,
121) der Körper zusammenpassen.
11. Optische Verbindungsdose (1) für ein optisches Kabel nach Anspruch 10, wobei die ersten
Schlitze (20, 120) des ersten Körpers (10, 110) an den ersten Schlitzen (21, 121)
des zweiten Körpers (11, 111) ausgerichtet sind, wenn die Körper in dem Sitz (7) aufeinander
gesetzt werden.
12. Optische Verbindungsdose (1) für optische Kabel nach Anspruch 8, wenn abhängig von
Anspruch 3, wobei der erste und der zweite Körper (10, 11, 110, 111) mindestens einen
zweiten Schlitz (28, 29, 128, 129) auf der gegenüberliegenden Seite des jeweiligen
nach außen offenen Kanals (12, 13, 112, 113) aufweisen, und wobei der Deckel (4) des
Abschlusskastens (1) Vorsprungselemente (32), die mit dem zweiten Schlitz (28, 29,
128, 129) zusammenpassen, wenn der Deckel (4) auf der umlaufenden Wandung (3) der
Verbindungsdose (1) ruht, umfasst.
1. Dispositif de fermeture d'orifice (8) pour recevoir un câble optique (9) lorsqu'il
traverse une paroi périphérique (3) d'un boîtier de terminaison (1), comprenant :
- un premier corps (10, 110) et un second corps (11, 111) ayant chacun une épaisseur
(T) et une hauteur (H) définissant un passage (14, 114) entre eux lorsque les corps
sont placés l'un sur l'autre,
- un bouchon amovible (15, 115) fermant ledit passage (14, 114),
- des ponts flexibles et cassables (16, 17, 116, 117) reliant ledit bouchon (15, 115)
auxdits premier et second corps,
caractérisé en ce que lesdits ponts flexibles et cassables (16, 17, 116, 117) sont configurés pour autoriser
un mouvement angulaire du bouchon par rapport à chacun des corps d'au moins 90°.
2. Dispositif de fermeture d'orifice (8) selon la revendication 1, dans lequel lesdits
ponts (16, 17, 116, 117) s'étendent du bouchon au corps respectif le long de directions
opposées.
3. Dispositif de fermeture d'orifice (8) selon la revendication 1 ou 2, dans lequel chaque
corps est muni sur l'une de ses faces d'un canal ouvert vers l'extérieur (12, 13,
112, 113) s'étendant axialement à travers la totalité de l'épaisseur (T) du corps.
4. Dispositif de fermeture d'orifice (8) selon la revendication 3, dans lequel lesdits
premier et second corps, lorsqu'ils reposent l'un sur l'autre avec les canaux ouverts
respectifs se faisant face l'un à l'autre, forment ledit passage (14, 114).
5. Dispositif de fermeture d'orifice (8) selon l'une quelconque des revendications 3
et 4, dans lequel lesdits canaux ouverts vers l'extérieur (12, 13) ont une surface
interne qui est façonnée avec une pluralité d'indentations flexibles (19).
6. Dispositif de fermeture d'orifice (8) selon l'une quelconque des revendications 3
à 5, dans lequel la section transversale du passage (14, 114), lorsqu'il est formé
par lesdits canaux ouverts vers l'extérieur (12, 13, 112, 113), a une taille configurée
pour recevoir un câble optique (9).
7. Dispositif de fermeture d'orifice (8) selon l'une quelconque des revendications 1
à 6, dans lequel lesdits ponts flexibles et cassables (16, 17, 116, 117) comprennent
au moins un concentrateur de contraintes (18).
8. Boîtier de terminaison de câble optique (1) ayant un fond (2), un couvercle (4) et
une paroi périphérique (3), le boîtier de terminaison de câble optique (1) comprenant
:
- un dispositif de fermeture d'orifice (8) selon l'une quelconque des revendications
1 à 7,
- au moins une ouverture (6) formée dans au moins une partie de ladite paroi périphérique
(3) du boîtier de terminaison (1), et
- un siège (7) formé dans ladite au moins une ouverture (6) pour recevoir ledit premier
corps (10, 110) et ledit second corps (11, 111) lorsque ledit premier corps (10, 110)
et ledit second corps (11, 111) sont placés l'un sur l'autre à l'intérieur de ladite
au moins une ouverture (6).
9. Boîtier de terminaison de câble optique (1) selon la revendication 8 lorsque prise
en dépendance de la revendication 5, dans lequel lesdites indentations (19) sont réparties
de manière axiale sur la surface interne de chaque canal (12, 13).
10. Boîtier de terminaison de câble optique (1) selon la revendication 8 lorsque prise
en dépendance de la revendication 3, dans lequel lesdits premier et second corps (10,
11, 110, 111) comprennent au moins une première fente (20, 21, 120, 121) sur les deux
côtés qui s'étendent parallèlement à l'extension axiale du canal ouvert vers l'extérieur
(12, 13, 112, 113) respectif, ladite au moins une première fente (20, 21, 120, 121)
s'étendant le long de la hauteur (H) des corps, et dans lequel la paroi périphérique
(3) du boîtier de terminaison (1) a une épaisseur (T) pour recevoir lesdits premier
et second corps (10, 11, 110, 111) lorsque lesdits corps sont placés l'un sur l'autre
dans ledit siège (7), ledit siège (7) comprenant des nervures (26, 27) s'accouplant
avec lesdites premières fentes (20, 21, 120, 121) desdits corps.
11. Boîtier de terminaison de câble optique (1) selon la revendication 10, dans lequel
les premières fentes (20, 120) du premier corps (10, 110) sont alignées avec les premières
fentes (21, 121) du second corps (11, 111) lorsque les corps sont placés l'un sur
l'autre dans ledit siège (7).
12. Boîtier de terminaison de câble optique (1) selon la revendication 8 lorsque prise
en dépendance de la revendication 3, dans lequel lesdits premier et second corps (10,
11, 110, 111) comprennent au moins une seconde fente (28, 29, 128, 129) sur le côté
opposé au canal ouvert vers l'extérieur (12, 13, 112, 113) respectif, et dans lequel
ledit couvercle (4) du boîtier de terminaison (1) comprend des éléments de projection
(32) s'accouplant avec ladite seconde fente (28, 29, 128, 129) lorsque le couvercle
(4) repose sur la paroi périphérique (3) du boîtier de terminaison (1).